The Geologic Story of Yellowstone National ParkKeefer, William R.
Science
The Geologic Story of Yellowstone National Park
Keefer, William R.
Geology -- Yellowstone National Park
With the sudden removal of hundreds of cubic miles of molten rock from
underground, the roofs of the twin magma chambers collapsed. Enormous
blocks of rock fell in above each of the chambers, and a great crater,
or _caldera_, broke the ground surface in central Yellowstone (fig.
23C). The exact depth to which the original surface collapsed is
unknown, but it must have been several thousand feet. The subsidence
took place chiefly along large vertical, or normal, faults in the ring
fracture zones above the margins of the magma chambers (fig. 22).
Abundant, though less extensive, normal faults also formed outside the
caldera proper, as the surrounding areas adjusted to the staggering
impact of the explosive eruptions and subsequent collapse.
Because the Yellowstone caldera now lies partly buried by thick lava
flows, the appearance of the caldera today is not nearly as impressive
as it must have been when the caldera was first formed. Many of the
important features, however, are particularly well exposed in the
vicinity of Canyon Village (fig. 26). The steep south slope of the
nearby Washburn Range (fig. 4) marks the north edge of the caldera, and
the range itself stands high because it was not involved in the
collapse. Canyon Village, on the other hand, lies at a much lower
elevation within the caldera proper. Turnouts on the road just south of
Dunraven Pass provide especially fine views of the northern part of the
caldera, and on a clear day Flat Mountain and the Red Mountains, which
mark the south edge of the caldera, south of Yellowstone Lake, can be
seen 50 miles away. As might be expected, the large basin occupied by
Yellowstone Lake owes its existence in part to caldera collapse. The
south edge of the caldera cuts across the south-central part of the
lake, along Flat Mountain Arm and the north tip of the Promontory; the
east edge coincides approximately with the east edge of the lake north
of Southeast Arm (fig. 27). Also, the prominent bluffs north of the
Madison River near Madison Junction mark part of the north rim of the
caldera.
[Illustration: CALDERA DEVELOPMENT. Schematic diagrams showing
idealized stages in the development of the Yellowstone caldera
600,000 years ago. The scales shown in Diagram A are approximately
the size of the features in Yellowstone. Although only one magma
chamber is pictured in the diagrams, two chambers were involved in
the Yellowstone eruption. (Based on information supplied by R. L.
Christiansen and H. R. Blank, Jr.) (Fig. 23)
A, A large magma chamber formed deep within the earth, and the
molten rock began to force its way slowly toward the surface. As it
pushed upward, it arched the overlying rocks into a broad dome. The
arching produced a series of concentric fractures, or a ring
fracture zone, around the crest of the dome. The fractures extended
downward toward the top of the magma chamber.]
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account